The spiking activity of cortical neurons is highly variable. This variability is generally correlated among nearby neurons, an effect commonly interpreted to reflect the coactivation of neurons due to anatomically shared inputs. Recent findings, however, indicate that correlations can be dynamically modulated, suggesting that the underlying mechanisms are not well understood. Here, we investigate the hypothesis that correlations are dominated by neuronal coinactivation: the occurrence of brief silent periods during which all neurons in the local network stop firing. We recorded spiking activity from large populations of neurons in the auditory cortex of anesthetized rats across different brain states. During spontaneous activity, the reduct...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Cortical information processing depends critically on an animal’s brain state. Previous research has...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
The spiking activity of cortical neurons is highly variable. This variability is generally correlate...
The spiking activity of cortical neurons is highly variable. This variability is generally correlate...
The spiking activity of cortical neurons is highly variable. This variability is generally correlate...
The spiking activity of cortical neurons is highly variable. This variability is generally correlate...
The spiking activity of cortical neurons is highly variable. This variability is generally correlate...
Cortical networks exhibit intrinsic dynamics that drive coordinated, large-scale fluctuations across...
Cortical networks exhibit intrinsic dynamics that drive coordinated, large-scale fluctuations across...
Cortical networks exhibit intrinsic dynamics that drive coordinated, large-scale fluctuations across...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
<div><p>Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical act...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Cortical information processing depends critically on an animal’s brain state. Previous research has...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
The spiking activity of cortical neurons is highly variable. This variability is generally correlate...
The spiking activity of cortical neurons is highly variable. This variability is generally correlate...
The spiking activity of cortical neurons is highly variable. This variability is generally correlate...
The spiking activity of cortical neurons is highly variable. This variability is generally correlate...
The spiking activity of cortical neurons is highly variable. This variability is generally correlate...
Cortical networks exhibit intrinsic dynamics that drive coordinated, large-scale fluctuations across...
Cortical networks exhibit intrinsic dynamics that drive coordinated, large-scale fluctuations across...
Cortical networks exhibit intrinsic dynamics that drive coordinated, large-scale fluctuations across...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
<div><p>Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical act...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...
Cortical information processing depends critically on an animal’s brain state. Previous research has...
Population-wide oscillations are ubiquitously observed in mesoscopic signals of cortical activity. I...